Department of Orthopaedic Surgery, University of California San Diego, Research Service VA San Diego Healthcare System San Diego, California, USA.
J Orthop Res. 2012 Aug;30(8):1321-6. doi: 10.1002/jor.22068. Epub 2012 Jan 20.
Abdominal wall muscles have a unique morphology suggesting a complex role in generating and transferring force to the spinal column. Studying passive mechanical properties of these muscles may provide insights into their ability to transfer force among structures. Biopsies from rectus abdominis (RA), external oblique (EO), internal oblique (IO), and transverse abdominis (TrA) were harvested from male Sprague-Dawley rats, and single muscle fibers and fiber bundles (4-8 fibers ensheathed in their connective tissue matrix) were isolated and mechanically stretched in a passive state. Slack sarcomere lengths were measured and elastic moduli were calculated from stress-strain data. Titin molecular mass was also measured from single muscle fibers. No significant differences were found among the four abdominal wall muscles in terms of slack sarcomere length or elastic modulus. Interestingly, across all four muscles, slack sarcomere lengths were quite long in individual muscle fibers (>2.4 µm), and demonstrated a significantly longer slack length in comparison to fiber bundles (p < 0.0001). Also, the extracellular connective tissue matrix provided a stiffening effect and enhanced the resistance to lengthening at long muscle lengths. Titin molecular mass was significantly less in TrA compared to each of the other three muscles (p < 0.0009), but this difference did not correspond to hypothesized differences in stiffness.
腹壁肌肉具有独特的形态结构,这表明它们在向脊柱传递力量方面发挥着复杂的作用。研究这些肌肉的被动机械特性可以深入了解它们在结构间传递力量的能力。从雄性 Sprague-Dawley 大鼠的腹直肌 (RA)、腹外斜肌 (EO)、腹内斜肌 (IO) 和腹横肌 (TrA) 中采集活检样本,并分离和机械拉伸这些肌肉的单根肌纤维和肌纤维束(4-8 根纤维包裹在其结缔组织基质中),使其处于被动状态。测量静息肌节长度,并根据应力-应变数据计算弹性模量。还从单根肌纤维中测量肌联蛋白的分子量。在静息肌节长度或弹性模量方面,这四种腹壁肌肉之间没有显著差异。有趣的是,在所有四种肌肉中,单根肌纤维的静息肌节长度都相当长(>2.4 µm),与肌纤维束相比,静息长度明显更长(p < 0.0001)。此外,细胞外结缔组织基质提供了一个增强硬度的效果,并在肌肉拉长到较长长度时增强了抵抗拉长的能力。与其他三种肌肉相比,TrA 中的肌联蛋白分子量显著较小(p < 0.0009),但这种差异与假设的硬度差异并不对应。